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Conjugates of Tacrine and Salicylic Acid Derivatives as New Promising Multitarget Agents for Alzheimer’s Disease

A series of previously synthesized conjugates of tacrine and salicylamide was extended by varying the structure of the salicylamide fragment and using salicylic aldehyde to synthesize salicylimine derivatives. The hybrids exhibited broad-spectrum biological activity. All new conjugates were potent i...

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Autores principales: Makhaeva, Galina F., Kovaleva, Nadezhda V., Rudakova, Elena V., Boltneva, Natalia P., Grishchenko, Maria V., Lushchekina, Sofya V., Astakhova, Tatiana Y., Serebryakova, Olga G., Timokhina, Elena N., Zhilina, Ekaterina F., Shchegolkov, Evgeny V., Ulitko, Mariya V., Radchenko, Eugene V., Palyulin, Vladimir A., Burgart, Yanina V., Saloutin, Victor I., Bachurin, Sergey O., Richardson, Rudy J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916969/
https://www.ncbi.nlm.nih.gov/pubmed/36768608
http://dx.doi.org/10.3390/ijms24032285
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author Makhaeva, Galina F.
Kovaleva, Nadezhda V.
Rudakova, Elena V.
Boltneva, Natalia P.
Grishchenko, Maria V.
Lushchekina, Sofya V.
Astakhova, Tatiana Y.
Serebryakova, Olga G.
Timokhina, Elena N.
Zhilina, Ekaterina F.
Shchegolkov, Evgeny V.
Ulitko, Mariya V.
Radchenko, Eugene V.
Palyulin, Vladimir A.
Burgart, Yanina V.
Saloutin, Victor I.
Bachurin, Sergey O.
Richardson, Rudy J.
author_facet Makhaeva, Galina F.
Kovaleva, Nadezhda V.
Rudakova, Elena V.
Boltneva, Natalia P.
Grishchenko, Maria V.
Lushchekina, Sofya V.
Astakhova, Tatiana Y.
Serebryakova, Olga G.
Timokhina, Elena N.
Zhilina, Ekaterina F.
Shchegolkov, Evgeny V.
Ulitko, Mariya V.
Radchenko, Eugene V.
Palyulin, Vladimir A.
Burgart, Yanina V.
Saloutin, Victor I.
Bachurin, Sergey O.
Richardson, Rudy J.
author_sort Makhaeva, Galina F.
collection PubMed
description A series of previously synthesized conjugates of tacrine and salicylamide was extended by varying the structure of the salicylamide fragment and using salicylic aldehyde to synthesize salicylimine derivatives. The hybrids exhibited broad-spectrum biological activity. All new conjugates were potent inhibitors of acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) with selectivity toward BChE. The structure of the salicylamide moiety exerted little effect on anticholinesterase activity, but AChE inhibition increased with spacer elongation. The most active conjugates were salicylimine derivatives: IC(50) values of the lead compound 10c were 0.0826 µM (AChE) and 0.0156 µM (BChE), with weak inhibition of the off-target carboxylesterase. The hybrids were mixed-type reversible inhibitors of both cholinesterases and displayed dual binding to the catalytic and peripheral anionic sites of AChE in molecular docking, which, along with experimental results on propidium iodide displacement, suggested their potential to block AChE-induced β-amyloid aggregation. All conjugates inhibited Aβ(42) self-aggregation in the thioflavin test, and inhibition increased with spacer elongation. Salicylimine 10c and salicylamide 5c with (CH(2))(8) spacers were the lead compounds for inhibiting Aβ(42) self-aggregation, which was corroborated by molecular docking to Aβ(42). ABTS(•+)-scavenging activity was highest for salicylamides 5a–c, intermediate for salicylimines 10a–c, low for F-containing salicylamides 7, and non-existent for methoxybenzoylamides 6 and difluoromethoxybenzoylamides 8. In the FRAP antioxidant (AO) assay, the test compounds displayed little or no activity. Quantum chemical analysis and molecular dynamics (MD) simulations with QM/MM potentials explained the AO structure–activity relationships. All conjugates were effective chelators of Cu(2+), Fe(2+), and Zn(2+), with molar compound/metal (Cu(2+)) ratios of 2:1 (5b) and ~1:1 (10b). Conjugates exerted comparable or lower cytotoxicity than tacrine on mouse hepatocytes and had favorable predicted intestinal absorption and blood-brain barrier permeability. The overall results indicate that the synthesized conjugates are promising new multifunctional agents for the potential treatment of AD.
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spelling pubmed-99169692023-02-11 Conjugates of Tacrine and Salicylic Acid Derivatives as New Promising Multitarget Agents for Alzheimer’s Disease Makhaeva, Galina F. Kovaleva, Nadezhda V. Rudakova, Elena V. Boltneva, Natalia P. Grishchenko, Maria V. Lushchekina, Sofya V. Astakhova, Tatiana Y. Serebryakova, Olga G. Timokhina, Elena N. Zhilina, Ekaterina F. Shchegolkov, Evgeny V. Ulitko, Mariya V. Radchenko, Eugene V. Palyulin, Vladimir A. Burgart, Yanina V. Saloutin, Victor I. Bachurin, Sergey O. Richardson, Rudy J. Int J Mol Sci Article A series of previously synthesized conjugates of tacrine and salicylamide was extended by varying the structure of the salicylamide fragment and using salicylic aldehyde to synthesize salicylimine derivatives. The hybrids exhibited broad-spectrum biological activity. All new conjugates were potent inhibitors of acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) with selectivity toward BChE. The structure of the salicylamide moiety exerted little effect on anticholinesterase activity, but AChE inhibition increased with spacer elongation. The most active conjugates were salicylimine derivatives: IC(50) values of the lead compound 10c were 0.0826 µM (AChE) and 0.0156 µM (BChE), with weak inhibition of the off-target carboxylesterase. The hybrids were mixed-type reversible inhibitors of both cholinesterases and displayed dual binding to the catalytic and peripheral anionic sites of AChE in molecular docking, which, along with experimental results on propidium iodide displacement, suggested their potential to block AChE-induced β-amyloid aggregation. All conjugates inhibited Aβ(42) self-aggregation in the thioflavin test, and inhibition increased with spacer elongation. Salicylimine 10c and salicylamide 5c with (CH(2))(8) spacers were the lead compounds for inhibiting Aβ(42) self-aggregation, which was corroborated by molecular docking to Aβ(42). ABTS(•+)-scavenging activity was highest for salicylamides 5a–c, intermediate for salicylimines 10a–c, low for F-containing salicylamides 7, and non-existent for methoxybenzoylamides 6 and difluoromethoxybenzoylamides 8. In the FRAP antioxidant (AO) assay, the test compounds displayed little or no activity. Quantum chemical analysis and molecular dynamics (MD) simulations with QM/MM potentials explained the AO structure–activity relationships. All conjugates were effective chelators of Cu(2+), Fe(2+), and Zn(2+), with molar compound/metal (Cu(2+)) ratios of 2:1 (5b) and ~1:1 (10b). Conjugates exerted comparable or lower cytotoxicity than tacrine on mouse hepatocytes and had favorable predicted intestinal absorption and blood-brain barrier permeability. The overall results indicate that the synthesized conjugates are promising new multifunctional agents for the potential treatment of AD. MDPI 2023-01-24 /pmc/articles/PMC9916969/ /pubmed/36768608 http://dx.doi.org/10.3390/ijms24032285 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Makhaeva, Galina F.
Kovaleva, Nadezhda V.
Rudakova, Elena V.
Boltneva, Natalia P.
Grishchenko, Maria V.
Lushchekina, Sofya V.
Astakhova, Tatiana Y.
Serebryakova, Olga G.
Timokhina, Elena N.
Zhilina, Ekaterina F.
Shchegolkov, Evgeny V.
Ulitko, Mariya V.
Radchenko, Eugene V.
Palyulin, Vladimir A.
Burgart, Yanina V.
Saloutin, Victor I.
Bachurin, Sergey O.
Richardson, Rudy J.
Conjugates of Tacrine and Salicylic Acid Derivatives as New Promising Multitarget Agents for Alzheimer’s Disease
title Conjugates of Tacrine and Salicylic Acid Derivatives as New Promising Multitarget Agents for Alzheimer’s Disease
title_full Conjugates of Tacrine and Salicylic Acid Derivatives as New Promising Multitarget Agents for Alzheimer’s Disease
title_fullStr Conjugates of Tacrine and Salicylic Acid Derivatives as New Promising Multitarget Agents for Alzheimer’s Disease
title_full_unstemmed Conjugates of Tacrine and Salicylic Acid Derivatives as New Promising Multitarget Agents for Alzheimer’s Disease
title_short Conjugates of Tacrine and Salicylic Acid Derivatives as New Promising Multitarget Agents for Alzheimer’s Disease
title_sort conjugates of tacrine and salicylic acid derivatives as new promising multitarget agents for alzheimer’s disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916969/
https://www.ncbi.nlm.nih.gov/pubmed/36768608
http://dx.doi.org/10.3390/ijms24032285
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